Nahtz T, Reinig F, Torbenson MC, Homfeld IK, Römer P, Kuhl ES, Kunz M, Kölzer A, Aryal S, Bräuning A, Gaire NP, Büntgen U, Esper J (2026)
Publication Type: Journal article
Publication year: 2026
Book Volume: 37
Article Number: 164
Journal Issue: 1
DOI: 10.1007/s11676-026-02104-0
Although recognized as Asia’s “Water Tower”, our understanding of past natural and recent anthropogenic enforced climate change is limited for much of the Himalayas. The main contributing factors for that are sparse and short meteorological observations, seasonally restricted and often imprecise proxy archives, and spatially heterogeneous and temporally unstable climate dynamics. Here we present a network of five maximum latewood density (MXD) chronologies from 135 living fir (Abies spectabilis) trees from sites near the upper treeline between 3220 and 3750 m a.s.l. in Nepal. Individual series were processed to preserve interannual, decadal, and centennial-scale variability. The resulting composite chronology was calibrated against April–September (AMJJAS) temperatures over the period 1951–2022 CE (r
APA:
Nahtz, T., Reinig, F., Torbenson, M.C., Homfeld, I.K., Römer, P., Kuhl, E.S.,... Esper, J. (2026). Central Himalayan tree-ring density network reveals warm-season temperature variability back to 1775 CE. Journal of Forestry Research, 37(1). https://doi.org/10.1007/s11676-026-02104-0
MLA:
Nahtz, Tim, et al. "Central Himalayan tree-ring density network reveals warm-season temperature variability back to 1775 CE." Journal of Forestry Research 37.1 (2026).
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